Journals →  Gornyi Zhurnal →  2018 →  #7 →  Back

PRODUCTION EQUIPMENT AND AUTOMATION
ArticleName Experience of automated personnel health control system implementation and operation in work permit in Mine-8 at Priargunsky Mining and Chemical Works
DOI 10.17580/gzh.2018.07.18
ArticleAuthor Bataev A. V., Galinov V. Yu., Lysenko S. V., Yanchenko S. A.
ArticleAuthorData

“Atomredmetzoloto” JSC, Moscow, Russia:

A. V. Bataev, Project Manager, anvbataev@armz.ru
V. Yu. Galinov, Chief Safety Control Surveyor

 

Priargunsky Mining and Chemical Works, Krasnokamensk, Russia:
S. V. Lysenko, Director of Occupational and Industrial Safety
S. A. Yanchenko, Head of Occupational and Industrial Safety Department

Abstract

Safety is the top priority objective of State Atomic Energy Corporation ROSATOM. Occupational safety and health as well as industrial disease prevention are the key components of safety control. Mines operating within the Corporation are the hazardous production objects, and the personnel and infrastructure safety enforcement is of peculiar importance. This article describes the experience gained in implementation of an automated work permit system for personnel of an underground mine at Priargunsky Mining and Chemical Works. The scope of the project embraces automatic control of a person, health and safety training status. To this end, the mine medical facility was equipped with three control terminal stations; the administration and on-site facilities were provided with 4 check points fi tted with toll gates and person’s identity devices: single entry/exist point, auxiliary entry/exit point, lamp cabin and medical facility. The project also includes automated daily performance record of workers. On the whole, transition to the control system allows reduction in operating expenses due to dismiss of control personnel and enables accelerated and more objective health control per mine shifts.

The authors appreciate participation of A. M. Sokolov, KASKAD System Service Engineer, Priargunsky Mining and Chemical Works, in this study.

keywords Оccupational and industrial safety, uranium mines, Priargunsky Mining and Chemical Works, alcohol testing, person’s identity, labor discipline strengthening, health control, toll gates, medical terminal stations, software support
References

1. Grozovsky G. I., Sidorchuk V. V., Khokhlov I. K., Babchenkov E. A., Gonchar S. P. Human factor effect on personnel safety. Promyshlennost i bezopasnost. 2015. No. 4(83). pp. 54–59.
2. Galkin V. A., Makarov A. M., Kravchuk I. L., Lapaeva O. A. Role of human factor in sustainability of a mine. Problemy nedropolzovaniya. 2016. No. 4. pp. 189–197.
3. Prosvetova A. A., Noskov V. A., Tsirel S. V. Evaluation of technical and economic efficiency of measures for safe mining operations. Gornyi informatsionno-analiticheskii byulleten. 2014. No. 11. pp. 291–296.
4. Sokolov E. M., Kachurin N. M., Karnachev I. P., Shuratsky D. N. Assessment of industrial safety in mine. Izvestiya TulGU. Nauka o Zemle. 2014. Iss. 4. pp. 57–63.
5. Starikov A. V., Khlestkova U. A. Organizational framework for occupational and industrial safety control in industry. Nauka, tekhnika i obrazovanie. 2015. No. 8(14). pp. 76–79.
6. Fainburg G. Z. Education and training on occupational and industrial safety. Model of procedure organization in the chaos of regulatory documents. Bezopasnost i okhrana truda. 2015. No. 3. pp. 26–35.
7. Artemiev V. B., Galkin V. A., Makarov A. M., Kaledina N. O., Vorobiova O. V., Kravchuk I. L. Organization aspect of production safety control in mines. Bezopasnost truda v promyshlennosti. 2016. No. 12. pp. 20–26.
8. Goal – accident-free production. Chernye metally. 2016. No. 11. pp. 64–67.
9. Novikov N. N. Angle of viewing. Rich suggestions for occupational safety and health specialists (foreign literature review). Bezopasnost i okhrana truda. 2015. No. 1. pp. 17–23.
10. Alekseev A. M., Gavriliev I. M. Status of working environment and injury rate in USA mines. Science Time. 2015. No. 5. pp. 29–36.
11. Amponsah-Tawiah K., Leka S., Jain A., Hollis D., Cox T. The impact of physical and psychosocial risks on employee well-being and quality of life: The case of the mining industry in Ghana. Safety Science. 2014. Vol. 65. pp. 28–35
12. Mahdevari S., Shahriar K., Esfahanipour A. Human health and safety risks management in underground coal mines using fuzzy TOPSIS. Science of the Total Environment. 2014. Vol. 488–489. pp. 85–99.
13. Ulutasdemir N., Cirpan M., Copur E. O., Tanir F. Occupational Risks of Health Professionals in Turkey as an Emerging Economy. Annals of Global Health. 2015. Vol. 81, No. 4. pp. 522–529.
14. Skryabin R. M., Timofeev N. G. Development of an innovative shneko-heat-sink boring shell for drilling of shurfo-wells in the conditions of a kriolitozona. Eurasian Mining. 2016. No. 1. pp. 33– 36. DOI: 10.17580/em.2016.01.05
15. Domingues M. S. Q., Baptista A. L. F., Diogo M. T. Engineering complex systems applied to risk management in the mining industry. International Journal of Mining Science and Technology. 2017. Vol. 27, Iss. 4. pp. 611–616.
16. Wassenberg M., Brandenburger T. Experience of ThyssenKrupp Steel Europe in the field of production safety. Chernye Metally. 2016. No. 4. pp. 78–80.

Full content Experience of automated personnel health control system implementation and operation in work permit in Mine-8 at Priargunsky Mining and Chemical Works
Back